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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Evaluation of oxygen pressurized microwave-assisted digestion of botanical materials using diluted nitric acid
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Evaluation of oxygen pressurized microwave-assisted digestion of botanical materials using diluted nitric acid

机译:用稀硝酸评估氧气加压微波辅助植物材料的消化

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The feasibility of diluted nitric acid solutions for microwave-assisted decomposition of botanical samples in closed vessels was evaluated. Oxygen pressurized atmosphere was used to improve the digestion efficiency and Al, Ca, K, Fe, Mg and Na were determined in digests by inductively coupled plasma optical emission spectrometry (ICP OES). Efficiency of digestion was evaluated taking into account the residual carbon content (RCC) and residual acidity in digests. Samples were digested using nitric acid solutions (2, 3, 7, and 14 mol L~(-1) HNO_3) and the effect of gas phase composition inside the reaction vessels by purging the vessel with Ar (inert atmosphere, 1 bar), air (20% of oxygen, 1 bar) and pure O_2 (100% of oxygen, 1 bar) was evaluated. The influence of oxygen pressure was studied using pressures of 5, 10, 15 and 20 bar. It was demonstrated that a diluted nitric acid solution as low as 3 mol L~(-1) was suitable for an efficient digestion of sample masses up to 500 mg of botanical samples using 5 bar of oxygen pressure. The residual acidities in final digests were lower than 45% in relation to the initial amount of acid used for digestion (equivalent to 1.3 mol L~(-1) HNO_3). The accuracy of the proposed procedure was evaluated using certified reference materials of olive leaves, apple leaves, peach leaves and pine needles. Using the optimized conditions for sample digestion, the results obtained were in agreement with certified values. The limit of quantification was improved up to a factor of 14.5 times for the analytes evaluated. In addition, the proposed procedure was in agreement with the recommendations of the green chemistry once it was possible to obtain relatively high digestion efficiency (RCC < 5%) using only diluted HNO_3, which is important to minimize the generation of laboratory residues.
机译:评价了稀硝酸溶液在密闭容器中微波辅助分解植物样品的可行性。使用氧气加压气氛来提高消化效率,并通过电感耦合等离子体发射光谱法(ICP OES)测定消化液中的Al,Ca,K,Fe,Mg和Na。考虑到消化物中的残留碳含量(RCC)和残留酸度,评估了消化效率。使用硝酸溶液(2、3、7和14 mol L〜(-1)HNO_3)消解样品,并通过用Ar(惰性气氛,1 bar)吹扫反应容器,对反应容器内部的气相组成产生影响,评估空气(20%的氧气,1 bar)和纯O_2(100%的氧气,1 bar)。使用5、10、15和20 bar的压力研究了氧气压力的影响。结果表明,在5 bar的氧气压力下,低至3 mol L〜(-1)的稀硝酸溶液适用于有效消化500 mg植物样品的样品质量。相对于用于消化的酸的初始量(相当于1.3 mol L〜(-1)HNO_3),最终消化物中的残留酸度低于45%。使用橄榄叶,苹果叶,桃叶和松针的认证参考材料评估了建议程序的准确性。使用优化的样品消解条件,所得结果与认证值一致。评估的分析物的定量限提高了14.5倍。此外,一旦仅使用稀释的HNO_3就可以获得相对较高的消化效率(RCC <5%),则建议的程序与绿色化学的建议相符,这对于最大程度地减少实验室残留物很重要。

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